Acid substitutions for WO3 nanostructures synthesis by the hydrothermal route and its effect on physio-chemical and electrochemical properties for supercapacitors
Umesh V. Shembade(D.Y. Patil University), A.V. Moholkar(Shivaji University), Rajendra G. Sonkawade(Shivaji University), Sandeep B. Wategaonkar(D.Y. Patil University), Suprimkumar D. Dhas(Shivaji University), Vinayak G. Parale(Yonsei University), Suhas R. Ghatage(Maharaja Krishna Chandra Gajapati Medical College and Hospital), Sunny R. Gurav(Shivaji University), Jin Hyeok Kim(Chonnam National University), Hyung‐Ho Park(Yonsei University), Mayur A. Gaikwad(Chonnam National University)
Cited by 60
Related Papers
Recent status of chemical bath deposited metal chalcogenide and metal oxide thin films
|Current Applied Physics|2010|353
Self-activated ultrahigh chemosensitivity of oxide thin film nanostructures for transparent sensors
|Scientific Reports|2012|123
Extremely Sensitive and Selective NO Probe Based on Villi-like WO<sub>3</sub> Nanostructures for Application to Exhaled Breath Analyzers
|ACS Applied Materials & Interfaces|2013|106
Hydrothermal synthesis of mesoporous NiMnO3 nanostructures for supercapacitor application: Effect of electrolyte
|Journal of Energy Storage|2021|67